Unbiased Drug Target Prediction Reveals Sensitivity to Ferroptosis Inducers, HDAC and RTK Inhibitors in Melanoma Subtypes.

IF 3.5 4区 医学 Q1 DERMATOLOGY
Indira Pla, Botond L Szabolcs, Petra Nikolett Péter, Zsuzsanna Ujfaludi, Yonghyo Kim, Peter Horvatovich, Aniel Sanchez, Krzysztof Pawlowski, Elisabet Wieslander, Magdalena Kuras, Jimmy Rodriguez Murillo, Jéssica Guedes, Dorottya M P Pál, Anna A Ascsillán, Lazaro Hiram Betancourt, István Balázs Németh, Jeovanis Gil, Natália Pinto de Almeida, Beáta Szeitz, Leticia Szadai, Viktória Doma, Nicole Woldmar, Áron Bartha, Zoltan Pahi, Tibor Pankotai, Balázs Győrffy, A Marcell Szasz, Gilberto Domont, Fábio Nogueira, Ho Jeong Kwon, Roger Appelqvist, Sarolta Kárpáti, David Fenyö, Johan Malm, György Marko-Varga, Lajos V Kemény
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引用次数: 0

Abstract

Background: The utilization of PD1 and CTLA4 inhibitors has revolutionized the treatment of malignant melanoma (MM). However, resistance to targeted and immune-checkpoint-based therapies still poses a significant problem.

Objective: Here, we mine large-scale MM proteogenomic data to identify druggable targets and forecast treatment efficacy and resistance.

Methods: Leveraging protein profiles from established MM subtypes and molecular structures of 82 cancer treatment drugs, we identified nine candidate hub proteins, mTOR, FYN, PIK3CB, EGFR, MAPK3, MAP4K1, MAP2K1, SRC, and AKT1, across five distinct MM subtypes. These proteins are potential drug targets applicable to one or multiple MM subtypes. Additionally, by integrating proteogenomic profiles obtained from MM subtypes with MM cell line dependency and drug sensitivity data, we identified a total of 162 potentially targetable genes. Lastly, we identified 20 compounds exhibiting potential drug impact in at least one melanoma subtype.

Results: Employing these unbiased approaches, we have uncovered compounds targeting ferroptosis demonstrating a striking 30× fold difference in sensitivity among different subtypes.

Conclusions: Our results suggest innovative and novel therapeutic strategies by stratifying melanoma samples through proteomic profiling, offering a spectrum of novel therapeutic interventions and prospects for combination therapy.

无偏药物靶标预测揭示黑色素瘤亚型中对铁下垂诱导剂、HDAC和RTK抑制剂的敏感性。
背景:PD1和CTLA4抑制剂的使用已经彻底改变了恶性黑色素瘤(MM)的治疗。然而,对靶向和基于免疫检查点的治疗的耐药性仍然是一个重大问题。目的:在此,我们挖掘大规模的MM蛋白基因组数据,以确定可药物靶点并预测治疗疗效和耐药性。方法:利用已建立的MM亚型的蛋白谱和82种癌症治疗药物的分子结构,我们在5种不同的MM亚型中鉴定出9种候选枢纽蛋白,mTOR、FYN、PIK3CB、EGFR、MAPK3、MAP4K1、MAP2K1、SRC和AKT1。这些蛋白是适用于一种或多种MM亚型的潜在药物靶点。此外,通过整合从MM亚型获得的蛋白质基因组图谱与MM细胞系依赖性和药物敏感性数据,我们确定了总共162个潜在的靶向基因。最后,我们确定了20种化合物在至少一种黑色素瘤亚型中表现出潜在的药物作用。结果:采用这些无偏倚的方法,我们已经发现了针对铁下垂的化合物,在不同亚型之间显示出惊人的30倍的敏感性差异。结论:我们的研究结果提出了通过蛋白质组学分析对黑色素瘤样本进行分层的创新和新的治疗策略,提供了一系列新的治疗干预措施和联合治疗的前景。
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来源期刊
CiteScore
4.70
自引率
2.80%
发文量
476
审稿时长
3 months
期刊介绍: Published monthly, the International Journal of Dermatology is specifically designed to provide dermatologists around the world with a regular, up-to-date source of information on all aspects of the diagnosis and management of skin diseases. Accepted articles regularly cover clinical trials; education; morphology; pharmacology and therapeutics; case reports, and reviews. Additional features include tropical medical reports, news, correspondence, proceedings and transactions, and education. The International Journal of Dermatology is guided by a distinguished, international editorial board and emphasizes a global approach to continuing medical education for physicians and other providers of health care with a specific interest in problems relating to the skin.
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